首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >RARα-PLZF overcomes PLZF-mediated repression of CRABPI contributing to retinoid resistance in t(11;17) acute promyelocytic leukemia
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RARα-PLZF overcomes PLZF-mediated repression of CRABPI contributing to retinoid resistance in t(11;17) acute promyelocytic leukemia

机译:RARα-PLZF克服了PLZF介导的CRABPI抑制有助于t(11; 17)急性早幼粒细胞白血病的类维生素A抵抗

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摘要

Leukemia-associated chimeric oncoproteins often act as transcriptional repressors, targeting promoters of master genes involved in hematopoiesis. We show that CRABPI (encoding cellular retinoic acid binding protein I) is a target of PLZF, which is fused to RARα by the t(11;17)(q23;q21) translocation associated with retinoic acid (RA)-resistant acute promyelocytic leukemia (APL). PLZF represses the CRABPI locus through propagation of chromatin condensation from a remote intronic binding element culminating in silencing of the promoter. Although the canonical, PLZF-RARα oncoprotein has no impact on PLZF-mediated repression, the reciprocal translocation product RARα-PLZF binds to this remote binding site, recruiting p300, inducing promoter hypomethylation and CRABPI gene up-regulation. In line with these observations, RA-resistant murine PLZF/RARα+RARα/PLZF APL blasts express much higher levels of CRABPI than standard RA-sensitive PML/RARα APL. RARα-PLZF confers RA resistance to a retinoid-sensitive acute myeloid leukemia (AML) cell line in a CRABPI-dependent fashion. This study supports an active role for PLZF and RARα-PLZF in leukemogenesis, identifies up-regulation of CRABPI as a mechanism contributing to retinoid resistance, and reveals the ability of the reciprocal fusion gene products to mediate distinct epigenetic effects contributing to the leukemic phenotype.
机译:白血病相关的嵌合癌蛋白通常充当转录阻遏物,靶向参与造血作用的主基因启动子。我们显示,CRABPI(编码细胞视黄酸结合蛋白I)是PLZF的靶标,它通过与视黄酸(RA)耐药的急性早幼粒细胞白血病相关的t(11; 17)(q23; q21)易位与RARα融合(APL)。 PLZF通过来自远端内含子结合元件的染色质缩合的传播来抑制CRABPI基因座,最终导致启动子的沉默。尽管典型的PLZF-RARα癌蛋白对PLZF介导的阻遏没有影响,但相互易位产物RARα-PLZF结合到该远端结合位点,募集p300,诱导启动子低甲基化和CRABPI基因上调。与这些观察结果一致,抗RA的鼠类PLZF /RARα+RARα/ PLZF APL母细胞表达的CRABPI水平比对RA敏感的标准PML /RARαAPL更高。 RARα-PLZF以CRABPI依赖性方式赋予RA对类维生素A敏感的急性髓性白血病(AML)细胞耐药性。这项研究支持PLZF和RARα-PLZF在白血病发生中的积极作用,确定CRABPI的上调是促成类维生素A抵抗的机制,并揭示了相互融合基因产物介导促成白血病表型的独特表观遗传作用的能力。

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